SlideShare a Scribd company logo
1 of 5
Download to read offline
International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 06 Issue: 12 | Dec 2019 www.irjet.net p-ISSN: 2395-0072
© 2019, IRJET | Impact Factor value: 7.34 | ISO 9001:2008 Certified Journal | Page 262
Natural Fiber Reinforced Composites: A Review
T Pavan Kumar1, A Chennakesava Reddy2, C Udaya Kiran3
1Research Scholar, Department of Mechanical Engineering, Jawaharlal Nehru Technological University,
Hyderabad, India
2Professor, Department of Mechanical Engineering, Jawaharlal Nehru Technological University, Hyderabad, India
3Professor, Department of Mechanical Engineering, Bhasker Engineering College, Hyderabad, India.
---------------------------------------------------------------------***----------------------------------------------------------------------
Abstract - Over recent years, in the field of research,
engineering and science, natural fibers with polymer
composites are also useful as an alternative reinforcement for
traditional composite. Not only are natural fibers strong and
light, but they are also relatively cheap and have properties
such as high specific strength, low weight, non-abrasive,
environmentally friendly and biodegradable. Usually used
natural fibers such as Jute, Sisal, Banana, Hemp, etc., polymer
reinforcement of waste naturalfiber isasustainableoption for
the environment. The materials of the polymer matrix
together with the correct and suitable filler and better filler /
matrix create a strong connection between traditional and
modern methods or approaches. It allows the production of
polymeric composites showing great potential applicationsin
the construction, automotive, aerospace and packaging
industries. Due to the larger surface area and greater aspect
ratio, polymer composite displays significant applications in
different fields with fascinating properties.
Being environmentally friendly, polymer composite
applications offer new technology and business opportunities
for a number of industries, including aerospace, automotive,
electronics, and biotechnology. Hybrid polymer composites in
a reinforced polymer-based composite harness the synergy
between natural fibers. It leadstogetherwiththegreenappeal
to develop the estate. In addition to fiber-matrix interface
bond strength, the mechanical properties of a natural fiber-
reinforced polymer composite depend on parameters such as
fiber density, fiber size, chemical treatment and orientation.
The purpose of this review article is to clarify research and
development in improving the mechanical properties of
natural fiber reinforced polymer composites along with end
applications.
Key Words: Natural Fibre, Jute, Basalt, Kenaf, Matrix
1. INTRODUCTION
A composite is a mixture of two materialsinwhichoneof the
materials, called the reinforcement phase, is in the form of
fibers, sheets, or particles and is installed in various
materials called the Matrix phase. The substance that has
been extracted from two or more different materials with
mostly different physical and chemical properties leadingto
individual components. The components will be individual.
Composites are currently exploring application in products
ranging from simple PC sheets and vehicleparts,suchasskis
and bicycles, to elite athletic hardware. An interest in new,
simple, fantastic production procedures has also been
generated as composite material applications havegrownin
scope. Current assembly methods include prepreg shaping,
pultrusion, gum shaping, fiber winding, pressure trimming,
and hand lay-up. Such methods refer to a wide range as far
as price and value of products are concerned. ResinTransfer
Molding (RTM) has demonstrated its ability to deliver great
items at a moderately minimal effort as a guarantee. In
decreased volatile outflows and geometric adaptability, it
also has favorable circumstances. A comprehensive study
has been done on natural fibres through the years. Roger. M,
et.al. (1997), studied that Composite materials are used for
building and construction of bridges, structuressuchasboat
hulls, swimming pool panels, race car bodies, shower stalls,
bathtubs, storage tanks, imitation granite, and cultured
marble sinks and countertops [1]. Paul Wambua, et.al.
(2003), The outline of this study states that the execution of
regular fibre strengthened composites can be equivalent to
that of the engineered fibre-based composites, yet with
lower explicit weight and cost. The benefits of regular fibre
composites are their ‘great dimensional security’ and
‘sturdiness’ against wood-based composites [2].
According to Hoi-yan Cheung et. al. (2009), the study wason
different natural fibresandtheirdevelopmentinengineering
components and domestic components. Properties like
mechanical and thermal were also evaluated in depth. The
discussion was about reinforcing animal fibre on plantfibre.
The study concluded that it exhibits better thermal
properties in comparison to onlypolymers[3].Jawaida et.al.
(2011), This study examined the quality under tensile and
flexural behavior of' tri-layer oil palm EFB/woven Jutefiber
reinforced epoxy hybrid composites.' The tensile and
flexural properties of hybrid composites were found to be
higher than those of EFB composite, butlessthanwovenjute
composite [4]. Bapi Sarker, et.al. (2011), The material used
in this study was found to have low thickness,higher quality,
and modulus than plastic, which is why it is a decent
substitute for customary strands for greater partofthetime.
Broadly utilized regular strands are cotton, jute, sisal, corn,
coir, hemp, banana, pineapple, etc. These filaments are
biodegradable and furthermore natural neighborly[5].KuH,
et. al. (2011), Observations were made on the tensile
properties of a material made of polymer composite
strengthened by natural fiber [6]. Rafeeq et.al. (2013), the
mechanical propertiesofthe epoxymatrixhavebeenstudied
to create natural fibers such as stiffness, impact, flexural and
thermal properties.Byholdingthefillerpercentageconstant,
International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 06 Issue: 12 | Dec 2019 www.irjet.net p-ISSN: 2395-0072
© 2019, IRJET | Impact Factor value: 7.34 | ISO 9001:2008 Certified Journal | Page 263
composite was manufactured by hand lay-up system.
Concluded that it is possible to use composites in low-cost
applications [7]. Saba N, et. al. (2014), the study was on
hybrid composites and it was concluded that the properties
of the material can be different and can be improved with
different fiber lengths, orientation, fiber content and fiber
arrangement. Hybrid materials do not exist in nature they
are prepared by adding two or more than two materials
these are unique materials. In this work the combination of
polymer matrices and naturally available fibers were
considered [8].
1.1 A Study on Jute Fibre
According to Mubarak A, et. al. (2004), the study has
observed that from the few past decades, we have been
worrying about the green condition, and in this way our real
examinations have been centered around to make
contamination free conditions. It is viewed that non-
degradable materials are exclusively in charge of natural
contamination[9].M.Z.AbedinAbdullah-Al-Kafi,et.al.(2006),
Natural strands, according to the study, add to the simple
degradation of the composites. These strandsalsohavealess
ecological effect on their creation than glass filaments and
polymers, as they require less vitality and produce less
emanation [10]. S. Mukhopadhyay, et. al. (2015), this study
makes some interesting observations referring that Natural
fibres require only a low degree of industrialization for their
processing, and in comparison with an equivalent weight of
the most common synthetic reinforcing fibres, the energy
required for their production is small and hence the cost of
fabricating these composites is also relatively low. Another
observation is that Jute fibres, as a natural reinforcing agent,
are about seven times lighter than steel and high tensile
strength values with a suitable low-cost [11].
Mubarak A. Khan, et.al. (2015), The study summarizes that
Jute products are equallygoodwithdifferentstrandsinterms
of use of vitality, emanation of ozone depleting material
(GHG), eutrophication, and fermentation. One hectare of jute
plants retain huge amounts of CO2 from the climate and
during their 120-day life expectancy infuse nearly 11 tons of
O2. In addition,decayedleavesandunderlyingfoundationsof
jute plants enhance dirt maturity and decrease the cost of
manure. The production of 1 Kg of jute shopping packs
texture saves 80 MJ of vitality, as opposed to 1 Kg of poly
hydroxyl alkanoid. Jute Hessian materialdevourslessvitality
and radiates irrelevant measurements of 'GHG contrasting
and thermoplastic polymers'[12]. Md SahadatHossain,et.al.
(2017), This study observes that tightly integrating sensing,
actuation, and computation into composites could enable a
new generation of truly smart material systems that can
change their appearance and shape autonomously.
Applications for such materials include airfoils that change
their aerodynamic profile, vehicles withcamouflageabilities,
bridges that detect and repair damage, or robotic skins and
prosthetics with a realistic sense of touch [13].
Sharfun N. Arju, et.al. (2015), Mubarak A. Khan, et.al. (2009),
J.E. Riccieri, et.al. (1999), According to these studies,
extraordinary non-degradable composite materials are
directly and generally utilized rather than metals. Non-
degradable materials are exposed to be supplanted by
degradable ones soas to make contamination free condition.
In this way, common fibre composites are picked up to make
biodegradable materials [14, 15, 16].Jochen Gassan, et.al.
(1999), MMushfequrRahman,et.al.(2012),SivaBhaskerRao
Devireddy, et.al. (2016), An impressive observation made in
this study was that, among all thenormalfilaments,jutegives
off an impression of being a promising material, since it is
moderately economicalandindustriallyaccessibleintropical
nations [17,18,19]. Sharfun N. Arju, et.al. (2015), the
summary of this study says that eventually in time, various
non-degradable composite materials are generally utilized,
rather than metals. Non-degradable materialsareexposedto
be supplanted by degradable ones so as to make
contamination free condition. Consequently, normal fibre
composites are picked up to make biodegradable materials
[20]. Km Idriss Ali, et.al. (1994), A K Mohanty, et.al. (2000),
These studies report that the presentation of common fibre
fortified composites can be similar to that of the
manufactured fibre-based composites. However, with lower
explicit weight and cost, the benefits of normal fibre
composites are their ‘great dimensional security’ and
‘toughness’ against wood-based composites [21, 22, 23].
1.2 A Study on Kenaf Fibre
According to study made by Juliana .A, et. al. (2012),
investigations were made on kenaf plant and its production
in this study. It was concluded that kenaf maintains an
average height of 4 to 6 mm stem diameter, and ranges from
25 to 35 mm within a period of 4-5 months [24]. Imtiaz Ali
et. al. (2014), investigated on different factors of resin, to
determine the physio-mechanical properties of medium
density fibreboard (MDF) panels which were made from
kenaf bast fibres. The other objective was to reduce the
number of experimental runs using Taguchi method. The
investigation concluded that ‘there is a significant effect on
mechanical properties with respect to the changes in typeof
resin and moisture content’. It was also observed that
physio-mechanical propertiesaresuperior withMUFresinat
12% resin content and 12% mat moisture content. The
complete study led to a suggestion that wood can be
replaced by Kenaf fibres for MDF manufacturing 25].
H.O. Maurya et. al. (2015), in this study, the mechanical
and thermal properties of Kenaf short fibres were
determined after they were subjected to different
temperatures and climatic conditions. The study concluded
that ‘the mechanical and thermal propertiesofnatural fibres
will change withrespecttoenvironmental conditions’;which
is not same throughout the world [26]. N. Saba et. al. (2015),
made observations on ‘kenaf reinforced polymer material’
for the past few years. It was mentioned in the study that
since ‘kenaf reinforcement’ had superior mechanical
International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 06 Issue: 12 | Dec 2019 www.irjet.net p-ISSN: 2395-0072
© 2019, IRJET | Impact Factor value: 7.34 | ISO 9001:2008 Certified Journal | Page 264
properties, it can be used as material for building and
construction. According to RajneeshVerma,et.al.(2018), the
effects of fibre loading with different weight percentages on
flexural and tensile properties were evaluated. The test
samples, with and without alkali treatment, were taken.
Further reinforcing behaviour of kenaf fibre was observed
with Dynamic mechanical analysis [27].AlvidDevadas,et.al.
(2018), the investigation of mechanical and tribological
properties found that the strength of kenaf particles
improved with the reinforcement of neat epoxy.
Furthermore, there is an improvement in bending, overall
load distribution and flexibility of the material. It was also
concluded that Ws and friction coefficient improved
significantly with thereinforcementof neat epoxy withkenaf
particles. It was also seen that under different loading
conditions, the optimal fibre particle loading condition is
15% [28].
1.3 A Study on Basalt Fibre
Fiore V, et.al. (2015), discussedabout basaltfiber production
technology and contrasted with glass fiber production
technology. It was concluded that basalt production process
in comparison with glass fiber is non-hazardous and
environmentally friendly. Moreover, basalt consumes less
energy than glass fiber has been said [29]. In the study by V.
Fiore, et. al. (2016), Compositesstrengthenedjuteand basalt
were manufactured and accelerated aging of hygrothermal
stress and UV radiation was done. Each specimen is tested
for 14 days, 28 days, 56 days and 84 days. Mechanical tests
were carried out in accordance with the ASTM standard,
such as quasi-static flexural tests, charpy impact tests and
dynamic mechanical tests. It was concluded that the hybrid
composite has better impact, more flexural properties with
superior resistance to aging than just jute [30]. In another
study by Bulut M (2017), Observations were made on the
influence on mechanical properties such as tensile, flexural
and impact of graphene pellets with different weight
percentages. It was concluded that the bonding strength of
composite laminate was improved by 0.1% of graphene
pellets. Also presented were furtherfailurecharacteristicsof
the laminates prepared and tested [31].
2. CONCLUSION
Humanity has recently realized that, unless the ecosystem is
preserved, it will itself be endangered by over-consumption
of natural resources and a substantial reduction in the
world's fresh air. The use of renewable resources such as
plant-based and animal-based polymeric composites has
become an important design criterion for the design and
manufacture of components forall industrial products.In the
last decade's work on natural materials (animal, vegetable)
has increased rapidly with the growing interest over
sustainable solutions in product design. In recent years,
several studies have been carried out with the aim of
obtaining polymer composites that are eco-friendly,
biodegradable, low-cost lightweight natural fiber. Current
research has been undertaken to explore the potential of
natural fibers for various applications. The study focuses on
reinforcing various chopped and continuous fibers, as well
as on resins and filler materials affecting reinforcement and
strength. And also on thermal properties, characteristics of
materials.
REFERENCES
[1] Roger M. Rowell, Anand R. Sanadi, Daniel F. Caulfield,
Rodney E. Jacobson, “Utilization of natural fibres in
plastic composites: problems and opportunities,”
Lignocellulosic Plast. Composite: Vol.13, pp. 23-51, 1997.
[2] Paul Wambua, Ivens Jan, Ignaas Verpoest,
“Naturalfibres: can they replace glass in fibre reinforced
plastics,” Compos. Sci. Technol., 63 (9), pp. 1259-1264,
2003.
[3] Hoi-yan Cheung, Mei-po Ho, Kin-tak Lau, Francisco
Cardona, David Hui. “Natural fibre-reinforced
composites for bioengineering and environmental
engineering applications,” Composites: Part B, Vol.40,
pp.655-663, 2009.
[4] M.Jawaida, H.P.S.AbdulKhalila, A.AbuBakarb,“Materials
science and engineering: A Review,” Vol 528, PP 5190-
5195, 2011.
[5] Bapi Sarker, Kamol Dey, Ruhul A. Khan, “Effect of
incorporation of polypropylene on the physico-
mechanical andthermo-mechanical propertiesofgelatin
fibre based linear low density polyethylene bio-foamed
composite,” J. Thermoplast. Compos. Mater, 24 (5), pp.
679-694, 2011.
[6] Ku H, Wang H, Pattarachaiyakoop N, Trade M, “A review
on the tensile properties of natural fiber reinforced
polymer composites,” Compos Part B Eng, Vol. 42,
pp.856-73, 2011.
[7] Rafeeq, S.N, Abdul Majeed I.M and Saeed A.R, (2013),
“mechanical and thermal properties of Date palm fiber
and coconut shell particulate filler reinforced Epoxy
composite”, Indian Journal of Applied Research, 3(4),
pp.89-92, 2013.
[8] Saba N, Tahir P, Jawaid M, “A review on potentially of
nano filler/ natural fiber filled polymer hybrid
composites,” Polymers (Basel), Vol.6, pp.2247-73, 2014.
[9] Mubarak A. Khan, S. Shehrzade, M. MasudulHassan,
“Effect of alkali and ultraviolet (UV) radiation
pretreatment on physical and mechanical properties of
1, 6-hexanediol diacrylate–grafted jute yarn by UV
radiation,” J. Appl. Polym. Sci., 92 (1), pp. 18-24, 2004.
[10] M. Z. Abedin Abdullah-Al-Kafi,M.D.H.Beg,K.L.Pickering,
Mubarak A. Khan, “Study on the mechanical properties
of jute/glass fibre-reinforced unsaturated polyester
International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 06 Issue: 12 | Dec 2019 www.irjet.net p-ISSN: 2395-0072
© 2019, IRJET | Impact Factor value: 7.34 | ISO 9001:2008 Certified Journal | Page 265
hybrid composites: effect of surface modification by
ultraviolet radiation,” J. Reinf. Plast. Compos, 25 (6), pp.
575-588, 2006.
[11] S. Mukhopadhyay, S. Khatana, “A review on the use of
fibres in reinforced cementitious concrete,” J. Ind. Tex:
45 (2), pp. 239-264, 2015.
[12] Mubarak A. Khan, Md SaifurRahaman, A. Al-Jubayer,
J.M.M. Islam, “Modification of jute fibres by radiation-
induced graft copolymerization and their applications,”
V.K. Thakur (Ed.), Cellulose-Based Graft Copolymers:
Structure and Chemistry, pp. 209-235, 2015.
[13] Md Sahadat Hossain, AM Sarwaruddin Chowdhury,
Ruhul A. Khan. “Effect of disaccharide, gamma radiation
and temperature on the physico-mechanical properties
of jute fabrics reinforced unsaturated polyester resin-
based composite Radiat,” Eff. Defect Solid, 172 (5-6), pp.
517-530, 2017.
[14] Sharfun N. Arju, A.M. Afsar, Mubarak A. Khan, Dipak K.
Das. “Effects of jute fabric structuresontheperformance
of jute-reinforced polypropylene composites,”J. Reinf.
Plast. Compos, 34 (16), pp. 1306-1314, 2015.
[15] Mubarak A. Khan, RuhulA. Khan, Haydaruzzaman, Abul
Hossain, A.H. Khan. “Effect of gamma radiation on the
physico-mechanical and electrical properties of jute
fibre-reinforced polypropylene composites,”J. Reinf.
Plast. Compos, 28 (13), pp. 1651-1660, 2009.
[16] J.E. Riccieri, A. Vázquez, L. Hecker De Carvalho.
“Interfacial properties and initial step of the water
sorption in unidirectional unsaturated
polyester/vegetable fibre composites,” Polym. Compos,
20 (1), pp. 29-37, 1999.
[17] Jochen Gassan, Andrzej K. Bledzki. “Possibilities for
improving the mechanical properties of jute/epoxy
composites by alkali treatment of fibres,” Compos. Sci.
Technol., 59 (9), pp. 1303-1309, 1999.
[18] M. Mushfequr Rahman, Nusrat Sharmin, RuhulA. Khan,
Kamol Dey, M.E. Haque. “Studies on the mechanical and
degradation properties of jute fabric-reinforced natural
rubber composite: effect of gamma radiation,” J.
Thermoplast. Compos. Mater, 25 (2), pp. 249-264, 2012.
[19] Siva Bhaskara Rao Devireddy, Sandhyarani Biswas.
“Physical and thermal properties of unidirectional
banana–jute hybrid fibre-reinforcedepoxycomposites,”
J. Reinf. Plast. Compos, 35 (15), pp. 1157-1172, 2016.
[20] Sharfun N. Arju, A.M. Afsar, Mubarak A. Khan, Dipak K.
Das, “Effects of jute fabric structuresontheperformance
of jute-reinforced polypropylene composites,” J. Reinf.
Plast. Compos, 34 (16), pp. 1306-1314, 2015.
[21] KM Idriss Ali, Mubarak A. Khan, M.M. Husain, “Study of
wood plastic composite in the presence of nitrogen
containing additives,” Radiat. Phys. Chem., 44 (4), pp.
427-429, 1994.
[22] A.K. Mohanty, M.A. Khan, G. Hinrichsen, “Influence of
chemical surface modification on the properties of
biodegradable jute fabrics—polyester amide
composites,” Compos. Appl. Sci. Manuf., 31 (2), pp. 143-
150, 2000.
[23] A.K. Mohanty, Mubarak A. Khan, G. Hinrichsen, “Surface
modification of jute and its influence on performance of
biodegradable jute-fabric/Biopolcomposites,” Compos.
Sci. Technol., 60 (7), pp. 1115-1124, 2000.
[24] Juliana. A, Paridah, M, Rahim.S, Nor Azowa. I, Anwar. U,
“properties of particleboard made from Kenaf(Hibiscus
cannabinus L) as function of particle geometry,”
Materials and Design: Vol. 34, pp. 406-411, 2012.
[25] Imtiaz, Krishnan Jayaraman, Debes Bhattacharyya.
“Effects of resin and moisture content on the properties
of medium density fibreboards made from Kenaf bast
fibres,” Industrial Crops and Products, Vol. 52, pp. 191-
198, 2014.
[26] H.O. Maurya, M.K. Gupta, H. Singh. “Study on mechanical
properties of HDPE composite using short Kenaf fibre,”
Materials Today: Proceedings 2, pp. 1347-1355, 2015.
[27] N. Saba, M.T.Paridan, M.Jawaid, “Mechanical properties
of Kenaf fibre reinforced polymer composite: A review,”
Construction and Building Materials, Vol. 76, pp. 87-96,
2015.
[28] Alvid Devadas, Umar Nirmal, J. Hossen, “Investigation
into mechanical & tribological performance of Kenaf
fibre particle reinforced composite,”CogentEngineering
5: 1479210, 2018.
[29] Fiore V, Scalici T, Di Bella G, Valenza A. “A review on
basalt fibre and its composites”, Compos Part B Eng,
Vol.74, pp.74–94, 2015.
[30] V. Fiore, T. Scalici, D. Badagliacco, D. Enea, G. Alaimo, A.
Valenza, “Aging resistance of bio-epoxy jute-basalt
hybrid composites as novel multilayer structures for
cladding”, Composite Structures, 2016.
[31] Bulut M, “Mechanical properties of Basalt/Epoxy
composite laminatescontaininggraphemenanopellets,”
Composite Part B, 2017.
International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 06 Issue: 12 | Dec 2019 www.irjet.net p-ISSN: 2395-0072
© 2019, IRJET | Impact Factor value: 7.34 | ISO 9001:2008 Certified Journal | Page 266
BIOGRAPHIES
“Pavan Kumar T is a research
scholar, who has also registered 2
patents in Government of India.
His area of expertise lies in CAD
CAM, Machine Drawing and
Engineering Drawing. He is
proficient in modeling software
like CREO and Solidworks, with an
extensive knowledge in analysis
softwares like ANSYS
(Structural).”
“Chenna Kesava Reddy has
completed several R& D and
Consultancy proje cts sponsored
by AICTE, UGC, DRDO and State
Government worth 300 Lakhs. He
has guided 40 M.Tech projects
successfully and guided 18
research scholars for their Ph.D. “
“Udaya Kiran C hasbeenactingas
a Reviewer for various journals
like Journal of Reinforced Plastics
and Composites, Journal of
Thermal Engineering, Journal of
Chemical Engineering and
Materials Science. “

More Related Content

What's hot

EVALUATION OFTENSILE PROPERTIESOF EPOXY RESIN BASED COMPOSITES REINFORCED WIT...
EVALUATION OFTENSILE PROPERTIESOF EPOXY RESIN BASED COMPOSITES REINFORCED WIT...EVALUATION OFTENSILE PROPERTIESOF EPOXY RESIN BASED COMPOSITES REINFORCED WIT...
EVALUATION OFTENSILE PROPERTIESOF EPOXY RESIN BASED COMPOSITES REINFORCED WIT...IAEME Publication
 
A Study on Mechanical Properties of Hemp-Bagasse Fibers Reinforced with Epoxy...
A Study on Mechanical Properties of Hemp-Bagasse Fibers Reinforced with Epoxy...A Study on Mechanical Properties of Hemp-Bagasse Fibers Reinforced with Epoxy...
A Study on Mechanical Properties of Hemp-Bagasse Fibers Reinforced with Epoxy...IRJET Journal
 
Study on properties of sisal fiber reinforced concrete with different mix pro...
Study on properties of sisal fiber reinforced concrete with different mix pro...Study on properties of sisal fiber reinforced concrete with different mix pro...
Study on properties of sisal fiber reinforced concrete with different mix pro...eSAT Journals
 
Effect of Chemical Treatment and Curing Parameters on Mechanical Properties o...
Effect of Chemical Treatment and Curing Parameters on Mechanical Properties o...Effect of Chemical Treatment and Curing Parameters on Mechanical Properties o...
Effect of Chemical Treatment and Curing Parameters on Mechanical Properties o...IJERA Editor
 
Influence of Curing Temperature and Fiber Volume Fraction on the Mechanical ...
Influence of Curing Temperature and Fiber  Volume Fraction on the Mechanical ...Influence of Curing Temperature and Fiber  Volume Fraction on the Mechanical ...
Influence of Curing Temperature and Fiber Volume Fraction on the Mechanical ...Karthikn Subramanian
 
Experimental Investigation and Analysis A Mechanical Properties of Hybrid Pol...
Experimental Investigation and Analysis A Mechanical Properties of Hybrid Pol...Experimental Investigation and Analysis A Mechanical Properties of Hybrid Pol...
Experimental Investigation and Analysis A Mechanical Properties of Hybrid Pol...IJRES Journal
 
IRJET- Effect of Mercerization of Mechanical Behavior of Banana Fiber Reinfor...
IRJET- Effect of Mercerization of Mechanical Behavior of Banana Fiber Reinfor...IRJET- Effect of Mercerization of Mechanical Behavior of Banana Fiber Reinfor...
IRJET- Effect of Mercerization of Mechanical Behavior of Banana Fiber Reinfor...IRJET Journal
 
IRJET- Organic Plastic Production from the Banana fiber and the E-Glass f...
IRJET-  	  Organic Plastic Production from the Banana fiber and the E-Glass f...IRJET-  	  Organic Plastic Production from the Banana fiber and the E-Glass f...
IRJET- Organic Plastic Production from the Banana fiber and the E-Glass f...IRJET Journal
 
Fabrication and Testing of Natural Fiber Reinforced Hybrid Composites Banana/...
Fabrication and Testing of Natural Fiber Reinforced Hybrid Composites Banana/...Fabrication and Testing of Natural Fiber Reinforced Hybrid Composites Banana/...
Fabrication and Testing of Natural Fiber Reinforced Hybrid Composites Banana/...IJMER
 
STUDY ON THE INFLUENCE OF FIBER ORIENTATION ON PALF REINFORCED BISPHENOL COMP...
STUDY ON THE INFLUENCE OF FIBER ORIENTATION ON PALF REINFORCED BISPHENOL COMP...STUDY ON THE INFLUENCE OF FIBER ORIENTATION ON PALF REINFORCED BISPHENOL COMP...
STUDY ON THE INFLUENCE OF FIBER ORIENTATION ON PALF REINFORCED BISPHENOL COMP...IAEME Publication
 
Effect of fiber length on the mechanical properties of palf reinforced bisphe...
Effect of fiber length on the mechanical properties of palf reinforced bisphe...Effect of fiber length on the mechanical properties of palf reinforced bisphe...
Effect of fiber length on the mechanical properties of palf reinforced bisphe...IAEME Publication
 
Thermal conductivity Characterization of Bamboo fiber reinforced in Epoxy Resin
Thermal conductivity Characterization of Bamboo fiber reinforced in Epoxy ResinThermal conductivity Characterization of Bamboo fiber reinforced in Epoxy Resin
Thermal conductivity Characterization of Bamboo fiber reinforced in Epoxy ResinIOSR Journals
 
IRJET - A Review on Multi-Layered Armour using Sugarcane Bagasse Waste
IRJET -  	  A Review on Multi-Layered Armour using Sugarcane Bagasse WasteIRJET -  	  A Review on Multi-Layered Armour using Sugarcane Bagasse Waste
IRJET - A Review on Multi-Layered Armour using Sugarcane Bagasse WasteIRJET Journal
 
EVALUATION OF MECHANICAL PROPERTY ON PALM/COIR BASED POLYMER MATRIX COMPOSITES
EVALUATION OF MECHANICAL PROPERTY ON PALM/COIR BASED POLYMER MATRIX COMPOSITESEVALUATION OF MECHANICAL PROPERTY ON PALM/COIR BASED POLYMER MATRIX COMPOSITES
EVALUATION OF MECHANICAL PROPERTY ON PALM/COIR BASED POLYMER MATRIX COMPOSITESmsejjournal
 
PREPARATION AND CHARACTERIZATION OF ARECA BAST FIBER REINFORCED EPOXY AND VIN...
PREPARATION AND CHARACTERIZATION OF ARECA BAST FIBER REINFORCED EPOXY AND VIN...PREPARATION AND CHARACTERIZATION OF ARECA BAST FIBER REINFORCED EPOXY AND VIN...
PREPARATION AND CHARACTERIZATION OF ARECA BAST FIBER REINFORCED EPOXY AND VIN...IAEME Publication
 
Production of A Safety Helmet Using Palm Kernel Fiber And Shell Particulates
Production of A Safety Helmet Using Palm Kernel Fiber And Shell ParticulatesProduction of A Safety Helmet Using Palm Kernel Fiber And Shell Particulates
Production of A Safety Helmet Using Palm Kernel Fiber And Shell Particulatesinventionjournals
 
Design and Analysis of Composite Bolt
Design and Analysis of Composite BoltDesign and Analysis of Composite Bolt
Design and Analysis of Composite BoltIRJET Journal
 

What's hot (19)

EVALUATION OFTENSILE PROPERTIESOF EPOXY RESIN BASED COMPOSITES REINFORCED WIT...
EVALUATION OFTENSILE PROPERTIESOF EPOXY RESIN BASED COMPOSITES REINFORCED WIT...EVALUATION OFTENSILE PROPERTIESOF EPOXY RESIN BASED COMPOSITES REINFORCED WIT...
EVALUATION OFTENSILE PROPERTIESOF EPOXY RESIN BASED COMPOSITES REINFORCED WIT...
 
A Study on Mechanical Properties of Hemp-Bagasse Fibers Reinforced with Epoxy...
A Study on Mechanical Properties of Hemp-Bagasse Fibers Reinforced with Epoxy...A Study on Mechanical Properties of Hemp-Bagasse Fibers Reinforced with Epoxy...
A Study on Mechanical Properties of Hemp-Bagasse Fibers Reinforced with Epoxy...
 
Study on properties of sisal fiber reinforced concrete with different mix pro...
Study on properties of sisal fiber reinforced concrete with different mix pro...Study on properties of sisal fiber reinforced concrete with different mix pro...
Study on properties of sisal fiber reinforced concrete with different mix pro...
 
Effect of Chemical Treatment and Curing Parameters on Mechanical Properties o...
Effect of Chemical Treatment and Curing Parameters on Mechanical Properties o...Effect of Chemical Treatment and Curing Parameters on Mechanical Properties o...
Effect of Chemical Treatment and Curing Parameters on Mechanical Properties o...
 
Influence of Curing Temperature and Fiber Volume Fraction on the Mechanical ...
Influence of Curing Temperature and Fiber  Volume Fraction on the Mechanical ...Influence of Curing Temperature and Fiber  Volume Fraction on the Mechanical ...
Influence of Curing Temperature and Fiber Volume Fraction on the Mechanical ...
 
Experimental Investigation and Analysis A Mechanical Properties of Hybrid Pol...
Experimental Investigation and Analysis A Mechanical Properties of Hybrid Pol...Experimental Investigation and Analysis A Mechanical Properties of Hybrid Pol...
Experimental Investigation and Analysis A Mechanical Properties of Hybrid Pol...
 
IRJET- Effect of Mercerization of Mechanical Behavior of Banana Fiber Reinfor...
IRJET- Effect of Mercerization of Mechanical Behavior of Banana Fiber Reinfor...IRJET- Effect of Mercerization of Mechanical Behavior of Banana Fiber Reinfor...
IRJET- Effect of Mercerization of Mechanical Behavior of Banana Fiber Reinfor...
 
IRJET- Organic Plastic Production from the Banana fiber and the E-Glass f...
IRJET-  	  Organic Plastic Production from the Banana fiber and the E-Glass f...IRJET-  	  Organic Plastic Production from the Banana fiber and the E-Glass f...
IRJET- Organic Plastic Production from the Banana fiber and the E-Glass f...
 
Fabrication and Testing of Natural Fiber Reinforced Hybrid Composites Banana/...
Fabrication and Testing of Natural Fiber Reinforced Hybrid Composites Banana/...Fabrication and Testing of Natural Fiber Reinforced Hybrid Composites Banana/...
Fabrication and Testing of Natural Fiber Reinforced Hybrid Composites Banana/...
 
STUDY ON THE INFLUENCE OF FIBER ORIENTATION ON PALF REINFORCED BISPHENOL COMP...
STUDY ON THE INFLUENCE OF FIBER ORIENTATION ON PALF REINFORCED BISPHENOL COMP...STUDY ON THE INFLUENCE OF FIBER ORIENTATION ON PALF REINFORCED BISPHENOL COMP...
STUDY ON THE INFLUENCE OF FIBER ORIENTATION ON PALF REINFORCED BISPHENOL COMP...
 
W4102182187
W4102182187W4102182187
W4102182187
 
Effect of fiber length on the mechanical properties of palf reinforced bisphe...
Effect of fiber length on the mechanical properties of palf reinforced bisphe...Effect of fiber length on the mechanical properties of palf reinforced bisphe...
Effect of fiber length on the mechanical properties of palf reinforced bisphe...
 
Thermal conductivity Characterization of Bamboo fiber reinforced in Epoxy Resin
Thermal conductivity Characterization of Bamboo fiber reinforced in Epoxy ResinThermal conductivity Characterization of Bamboo fiber reinforced in Epoxy Resin
Thermal conductivity Characterization of Bamboo fiber reinforced in Epoxy Resin
 
IRJET - A Review on Multi-Layered Armour using Sugarcane Bagasse Waste
IRJET -  	  A Review on Multi-Layered Armour using Sugarcane Bagasse WasteIRJET -  	  A Review on Multi-Layered Armour using Sugarcane Bagasse Waste
IRJET - A Review on Multi-Layered Armour using Sugarcane Bagasse Waste
 
20720130101005
2072013010100520720130101005
20720130101005
 
EVALUATION OF MECHANICAL PROPERTY ON PALM/COIR BASED POLYMER MATRIX COMPOSITES
EVALUATION OF MECHANICAL PROPERTY ON PALM/COIR BASED POLYMER MATRIX COMPOSITESEVALUATION OF MECHANICAL PROPERTY ON PALM/COIR BASED POLYMER MATRIX COMPOSITES
EVALUATION OF MECHANICAL PROPERTY ON PALM/COIR BASED POLYMER MATRIX COMPOSITES
 
PREPARATION AND CHARACTERIZATION OF ARECA BAST FIBER REINFORCED EPOXY AND VIN...
PREPARATION AND CHARACTERIZATION OF ARECA BAST FIBER REINFORCED EPOXY AND VIN...PREPARATION AND CHARACTERIZATION OF ARECA BAST FIBER REINFORCED EPOXY AND VIN...
PREPARATION AND CHARACTERIZATION OF ARECA BAST FIBER REINFORCED EPOXY AND VIN...
 
Production of A Safety Helmet Using Palm Kernel Fiber And Shell Particulates
Production of A Safety Helmet Using Palm Kernel Fiber And Shell ParticulatesProduction of A Safety Helmet Using Palm Kernel Fiber And Shell Particulates
Production of A Safety Helmet Using Palm Kernel Fiber And Shell Particulates
 
Design and Analysis of Composite Bolt
Design and Analysis of Composite BoltDesign and Analysis of Composite Bolt
Design and Analysis of Composite Bolt
 

Similar to IRJET- Natural Fiber Reinforced Composites: A Review

Mechanical Characterization of Synthetic/Natural Fibre Polymer Matrix Composi...
Mechanical Characterization of Synthetic/Natural Fibre Polymer Matrix Composi...Mechanical Characterization of Synthetic/Natural Fibre Polymer Matrix Composi...
Mechanical Characterization of Synthetic/Natural Fibre Polymer Matrix Composi...IRJET Journal
 
IRJET- Investigation on Mechanical Behaviour of Sugarcane Bagasse Fiber R...
IRJET-  	  Investigation on Mechanical Behaviour of Sugarcane Bagasse Fiber R...IRJET-  	  Investigation on Mechanical Behaviour of Sugarcane Bagasse Fiber R...
IRJET- Investigation on Mechanical Behaviour of Sugarcane Bagasse Fiber R...IRJET Journal
 
Characteristics of Murta Bast Fiber Reinforced Epoxy Composites
Characteristics of Murta Bast Fiber Reinforced Epoxy CompositesCharacteristics of Murta Bast Fiber Reinforced Epoxy Composites
Characteristics of Murta Bast Fiber Reinforced Epoxy CompositesIJAEMSJORNAL
 
Effect of Chemical Treatment and Curing Parameters on Mechanical Properties o...
Effect of Chemical Treatment and Curing Parameters on Mechanical Properties o...Effect of Chemical Treatment and Curing Parameters on Mechanical Properties o...
Effect of Chemical Treatment and Curing Parameters on Mechanical Properties o...IJERA Editor
 
IRJET-Thermal Characterization of Bamboo and Flax (BFBF) Mat Reinforced Epoxy...
IRJET-Thermal Characterization of Bamboo and Flax (BFBF) Mat Reinforced Epoxy...IRJET-Thermal Characterization of Bamboo and Flax (BFBF) Mat Reinforced Epoxy...
IRJET-Thermal Characterization of Bamboo and Flax (BFBF) Mat Reinforced Epoxy...IRJET Journal
 
IRJET- A Comparative Study of Mechanical and Physical Properties of Polym...
IRJET-  	  A Comparative Study of Mechanical and Physical Properties of Polym...IRJET-  	  A Comparative Study of Mechanical and Physical Properties of Polym...
IRJET- A Comparative Study of Mechanical and Physical Properties of Polym...IRJET Journal
 
A Study on Properties of Natural Fibres - A Review
A Study on Properties of Natural Fibres - A ReviewA Study on Properties of Natural Fibres - A Review
A Study on Properties of Natural Fibres - A ReviewIRJET Journal
 
IRJET- Synthesis and Analyse the Physical Properties of Sugarcane Bagasse Gla...
IRJET- Synthesis and Analyse the Physical Properties of Sugarcane Bagasse Gla...IRJET- Synthesis and Analyse the Physical Properties of Sugarcane Bagasse Gla...
IRJET- Synthesis and Analyse the Physical Properties of Sugarcane Bagasse Gla...IRJET Journal
 
Modal analysis of hybrid sisaljute natural fiber polymer composite beam
Modal analysis of hybrid sisaljute natural fiber polymer composite beamModal analysis of hybrid sisaljute natural fiber polymer composite beam
Modal analysis of hybrid sisaljute natural fiber polymer composite beameSAT Journals
 
A review on “Fabrication and mechanical characterization of composites using ...
A review on “Fabrication and mechanical characterization of composites using ...A review on “Fabrication and mechanical characterization of composites using ...
A review on “Fabrication and mechanical characterization of composites using ...IRJET Journal
 
IRJET- A Review on the Mechanical Properties of Natural Fibre Reinforced Poly...
IRJET- A Review on the Mechanical Properties of Natural Fibre Reinforced Poly...IRJET- A Review on the Mechanical Properties of Natural Fibre Reinforced Poly...
IRJET- A Review on the Mechanical Properties of Natural Fibre Reinforced Poly...IRJET Journal
 
IRJET- Mechanical Behavior and Analysis of Okra and Pineapple Reinforced Comp...
IRJET- Mechanical Behavior and Analysis of Okra and Pineapple Reinforced Comp...IRJET- Mechanical Behavior and Analysis of Okra and Pineapple Reinforced Comp...
IRJET- Mechanical Behavior and Analysis of Okra and Pineapple Reinforced Comp...IRJET Journal
 
Nat fibart%3 a10.1007%2fs12034-010-0040-x
Nat fibart%3 a10.1007%2fs12034-010-0040-xNat fibart%3 a10.1007%2fs12034-010-0040-x
Nat fibart%3 a10.1007%2fs12034-010-0040-xJohn Rambo
 
Fabrication, experimental investigation of jute fiber reinforced epoxy compos...
Fabrication, experimental investigation of jute fiber reinforced epoxy compos...Fabrication, experimental investigation of jute fiber reinforced epoxy compos...
Fabrication, experimental investigation of jute fiber reinforced epoxy compos...Adib Bin Rashid
 

Similar to IRJET- Natural Fiber Reinforced Composites: A Review (20)

Properties of natural cmoposites
Properties of natural cmopositesProperties of natural cmoposites
Properties of natural cmoposites
 
Mechanical Characterization of Synthetic/Natural Fibre Polymer Matrix Composi...
Mechanical Characterization of Synthetic/Natural Fibre Polymer Matrix Composi...Mechanical Characterization of Synthetic/Natural Fibre Polymer Matrix Composi...
Mechanical Characterization of Synthetic/Natural Fibre Polymer Matrix Composi...
 
IRJET- Investigation on Mechanical Behaviour of Sugarcane Bagasse Fiber R...
IRJET-  	  Investigation on Mechanical Behaviour of Sugarcane Bagasse Fiber R...IRJET-  	  Investigation on Mechanical Behaviour of Sugarcane Bagasse Fiber R...
IRJET- Investigation on Mechanical Behaviour of Sugarcane Bagasse Fiber R...
 
Ijciet 08 02_037
Ijciet 08 02_037Ijciet 08 02_037
Ijciet 08 02_037
 
Natural Fibers Polymeric Composites with Particulate Fillers – A review report
Natural Fibers Polymeric Composites with Particulate Fillers – A review reportNatural Fibers Polymeric Composites with Particulate Fillers – A review report
Natural Fibers Polymeric Composites with Particulate Fillers – A review report
 
Characteristics of Murta Bast Fiber Reinforced Epoxy Composites
Characteristics of Murta Bast Fiber Reinforced Epoxy CompositesCharacteristics of Murta Bast Fiber Reinforced Epoxy Composites
Characteristics of Murta Bast Fiber Reinforced Epoxy Composites
 
Effect of Chemical Treatment and Curing Parameters on Mechanical Properties o...
Effect of Chemical Treatment and Curing Parameters on Mechanical Properties o...Effect of Chemical Treatment and Curing Parameters on Mechanical Properties o...
Effect of Chemical Treatment and Curing Parameters on Mechanical Properties o...
 
IRJET-Thermal Characterization of Bamboo and Flax (BFBF) Mat Reinforced Epoxy...
IRJET-Thermal Characterization of Bamboo and Flax (BFBF) Mat Reinforced Epoxy...IRJET-Thermal Characterization of Bamboo and Flax (BFBF) Mat Reinforced Epoxy...
IRJET-Thermal Characterization of Bamboo and Flax (BFBF) Mat Reinforced Epoxy...
 
Le3420152024
Le3420152024Le3420152024
Le3420152024
 
IRJET- A Comparative Study of Mechanical and Physical Properties of Polym...
IRJET-  	  A Comparative Study of Mechanical and Physical Properties of Polym...IRJET-  	  A Comparative Study of Mechanical and Physical Properties of Polym...
IRJET- A Comparative Study of Mechanical and Physical Properties of Polym...
 
A Study on Properties of Natural Fibres - A Review
A Study on Properties of Natural Fibres - A ReviewA Study on Properties of Natural Fibres - A Review
A Study on Properties of Natural Fibres - A Review
 
IRJET- Synthesis and Analyse the Physical Properties of Sugarcane Bagasse Gla...
IRJET- Synthesis and Analyse the Physical Properties of Sugarcane Bagasse Gla...IRJET- Synthesis and Analyse the Physical Properties of Sugarcane Bagasse Gla...
IRJET- Synthesis and Analyse the Physical Properties of Sugarcane Bagasse Gla...
 
Modal analysis of hybrid sisaljute natural fiber polymer composite beam
Modal analysis of hybrid sisaljute natural fiber polymer composite beamModal analysis of hybrid sisaljute natural fiber polymer composite beam
Modal analysis of hybrid sisaljute natural fiber polymer composite beam
 
A review on “Fabrication and mechanical characterization of composites using ...
A review on “Fabrication and mechanical characterization of composites using ...A review on “Fabrication and mechanical characterization of composites using ...
A review on “Fabrication and mechanical characterization of composites using ...
 
IRJET- A Review on the Mechanical Properties of Natural Fibre Reinforced Poly...
IRJET- A Review on the Mechanical Properties of Natural Fibre Reinforced Poly...IRJET- A Review on the Mechanical Properties of Natural Fibre Reinforced Poly...
IRJET- A Review on the Mechanical Properties of Natural Fibre Reinforced Poly...
 
IRJET- Mechanical Behavior and Analysis of Okra and Pineapple Reinforced Comp...
IRJET- Mechanical Behavior and Analysis of Okra and Pineapple Reinforced Comp...IRJET- Mechanical Behavior and Analysis of Okra and Pineapple Reinforced Comp...
IRJET- Mechanical Behavior and Analysis of Okra and Pineapple Reinforced Comp...
 
Nat fibart%3 a10.1007%2fs12034-010-0040-x
Nat fibart%3 a10.1007%2fs12034-010-0040-xNat fibart%3 a10.1007%2fs12034-010-0040-x
Nat fibart%3 a10.1007%2fs12034-010-0040-x
 
Fabrication, experimental investigation of jute fiber reinforced epoxy compos...
Fabrication, experimental investigation of jute fiber reinforced epoxy compos...Fabrication, experimental investigation of jute fiber reinforced epoxy compos...
Fabrication, experimental investigation of jute fiber reinforced epoxy compos...
 
E04472840
E04472840E04472840
E04472840
 
H04464456
H04464456H04464456
H04464456
 

More from IRJET Journal

TUNNELING IN HIMALAYAS WITH NATM METHOD: A SPECIAL REFERENCES TO SUNGAL TUNNE...
TUNNELING IN HIMALAYAS WITH NATM METHOD: A SPECIAL REFERENCES TO SUNGAL TUNNE...TUNNELING IN HIMALAYAS WITH NATM METHOD: A SPECIAL REFERENCES TO SUNGAL TUNNE...
TUNNELING IN HIMALAYAS WITH NATM METHOD: A SPECIAL REFERENCES TO SUNGAL TUNNE...IRJET Journal
 
STUDY THE EFFECT OF RESPONSE REDUCTION FACTOR ON RC FRAMED STRUCTURE
STUDY THE EFFECT OF RESPONSE REDUCTION FACTOR ON RC FRAMED STRUCTURESTUDY THE EFFECT OF RESPONSE REDUCTION FACTOR ON RC FRAMED STRUCTURE
STUDY THE EFFECT OF RESPONSE REDUCTION FACTOR ON RC FRAMED STRUCTUREIRJET Journal
 
A COMPARATIVE ANALYSIS OF RCC ELEMENT OF SLAB WITH STARK STEEL (HYSD STEEL) A...
A COMPARATIVE ANALYSIS OF RCC ELEMENT OF SLAB WITH STARK STEEL (HYSD STEEL) A...A COMPARATIVE ANALYSIS OF RCC ELEMENT OF SLAB WITH STARK STEEL (HYSD STEEL) A...
A COMPARATIVE ANALYSIS OF RCC ELEMENT OF SLAB WITH STARK STEEL (HYSD STEEL) A...IRJET Journal
 
Effect of Camber and Angles of Attack on Airfoil Characteristics
Effect of Camber and Angles of Attack on Airfoil CharacteristicsEffect of Camber and Angles of Attack on Airfoil Characteristics
Effect of Camber and Angles of Attack on Airfoil CharacteristicsIRJET Journal
 
A Review on the Progress and Challenges of Aluminum-Based Metal Matrix Compos...
A Review on the Progress and Challenges of Aluminum-Based Metal Matrix Compos...A Review on the Progress and Challenges of Aluminum-Based Metal Matrix Compos...
A Review on the Progress and Challenges of Aluminum-Based Metal Matrix Compos...IRJET Journal
 
Dynamic Urban Transit Optimization: A Graph Neural Network Approach for Real-...
Dynamic Urban Transit Optimization: A Graph Neural Network Approach for Real-...Dynamic Urban Transit Optimization: A Graph Neural Network Approach for Real-...
Dynamic Urban Transit Optimization: A Graph Neural Network Approach for Real-...IRJET Journal
 
Structural Analysis and Design of Multi-Storey Symmetric and Asymmetric Shape...
Structural Analysis and Design of Multi-Storey Symmetric and Asymmetric Shape...Structural Analysis and Design of Multi-Storey Symmetric and Asymmetric Shape...
Structural Analysis and Design of Multi-Storey Symmetric and Asymmetric Shape...IRJET Journal
 
A Review of “Seismic Response of RC Structures Having Plan and Vertical Irreg...
A Review of “Seismic Response of RC Structures Having Plan and Vertical Irreg...A Review of “Seismic Response of RC Structures Having Plan and Vertical Irreg...
A Review of “Seismic Response of RC Structures Having Plan and Vertical Irreg...IRJET Journal
 
A REVIEW ON MACHINE LEARNING IN ADAS
A REVIEW ON MACHINE LEARNING IN ADASA REVIEW ON MACHINE LEARNING IN ADAS
A REVIEW ON MACHINE LEARNING IN ADASIRJET Journal
 
Long Term Trend Analysis of Precipitation and Temperature for Asosa district,...
Long Term Trend Analysis of Precipitation and Temperature for Asosa district,...Long Term Trend Analysis of Precipitation and Temperature for Asosa district,...
Long Term Trend Analysis of Precipitation and Temperature for Asosa district,...IRJET Journal
 
P.E.B. Framed Structure Design and Analysis Using STAAD Pro
P.E.B. Framed Structure Design and Analysis Using STAAD ProP.E.B. Framed Structure Design and Analysis Using STAAD Pro
P.E.B. Framed Structure Design and Analysis Using STAAD ProIRJET Journal
 
A Review on Innovative Fiber Integration for Enhanced Reinforcement of Concre...
A Review on Innovative Fiber Integration for Enhanced Reinforcement of Concre...A Review on Innovative Fiber Integration for Enhanced Reinforcement of Concre...
A Review on Innovative Fiber Integration for Enhanced Reinforcement of Concre...IRJET Journal
 
Survey Paper on Cloud-Based Secured Healthcare System
Survey Paper on Cloud-Based Secured Healthcare SystemSurvey Paper on Cloud-Based Secured Healthcare System
Survey Paper on Cloud-Based Secured Healthcare SystemIRJET Journal
 
Review on studies and research on widening of existing concrete bridges
Review on studies and research on widening of existing concrete bridgesReview on studies and research on widening of existing concrete bridges
Review on studies and research on widening of existing concrete bridgesIRJET Journal
 
React based fullstack edtech web application
React based fullstack edtech web applicationReact based fullstack edtech web application
React based fullstack edtech web applicationIRJET Journal
 
A Comprehensive Review of Integrating IoT and Blockchain Technologies in the ...
A Comprehensive Review of Integrating IoT and Blockchain Technologies in the ...A Comprehensive Review of Integrating IoT and Blockchain Technologies in the ...
A Comprehensive Review of Integrating IoT and Blockchain Technologies in the ...IRJET Journal
 
A REVIEW ON THE PERFORMANCE OF COCONUT FIBRE REINFORCED CONCRETE.
A REVIEW ON THE PERFORMANCE OF COCONUT FIBRE REINFORCED CONCRETE.A REVIEW ON THE PERFORMANCE OF COCONUT FIBRE REINFORCED CONCRETE.
A REVIEW ON THE PERFORMANCE OF COCONUT FIBRE REINFORCED CONCRETE.IRJET Journal
 
Optimizing Business Management Process Workflows: The Dynamic Influence of Mi...
Optimizing Business Management Process Workflows: The Dynamic Influence of Mi...Optimizing Business Management Process Workflows: The Dynamic Influence of Mi...
Optimizing Business Management Process Workflows: The Dynamic Influence of Mi...IRJET Journal
 
Multistoried and Multi Bay Steel Building Frame by using Seismic Design
Multistoried and Multi Bay Steel Building Frame by using Seismic DesignMultistoried and Multi Bay Steel Building Frame by using Seismic Design
Multistoried and Multi Bay Steel Building Frame by using Seismic DesignIRJET Journal
 
Cost Optimization of Construction Using Plastic Waste as a Sustainable Constr...
Cost Optimization of Construction Using Plastic Waste as a Sustainable Constr...Cost Optimization of Construction Using Plastic Waste as a Sustainable Constr...
Cost Optimization of Construction Using Plastic Waste as a Sustainable Constr...IRJET Journal
 

More from IRJET Journal (20)

TUNNELING IN HIMALAYAS WITH NATM METHOD: A SPECIAL REFERENCES TO SUNGAL TUNNE...
TUNNELING IN HIMALAYAS WITH NATM METHOD: A SPECIAL REFERENCES TO SUNGAL TUNNE...TUNNELING IN HIMALAYAS WITH NATM METHOD: A SPECIAL REFERENCES TO SUNGAL TUNNE...
TUNNELING IN HIMALAYAS WITH NATM METHOD: A SPECIAL REFERENCES TO SUNGAL TUNNE...
 
STUDY THE EFFECT OF RESPONSE REDUCTION FACTOR ON RC FRAMED STRUCTURE
STUDY THE EFFECT OF RESPONSE REDUCTION FACTOR ON RC FRAMED STRUCTURESTUDY THE EFFECT OF RESPONSE REDUCTION FACTOR ON RC FRAMED STRUCTURE
STUDY THE EFFECT OF RESPONSE REDUCTION FACTOR ON RC FRAMED STRUCTURE
 
A COMPARATIVE ANALYSIS OF RCC ELEMENT OF SLAB WITH STARK STEEL (HYSD STEEL) A...
A COMPARATIVE ANALYSIS OF RCC ELEMENT OF SLAB WITH STARK STEEL (HYSD STEEL) A...A COMPARATIVE ANALYSIS OF RCC ELEMENT OF SLAB WITH STARK STEEL (HYSD STEEL) A...
A COMPARATIVE ANALYSIS OF RCC ELEMENT OF SLAB WITH STARK STEEL (HYSD STEEL) A...
 
Effect of Camber and Angles of Attack on Airfoil Characteristics
Effect of Camber and Angles of Attack on Airfoil CharacteristicsEffect of Camber and Angles of Attack on Airfoil Characteristics
Effect of Camber and Angles of Attack on Airfoil Characteristics
 
A Review on the Progress and Challenges of Aluminum-Based Metal Matrix Compos...
A Review on the Progress and Challenges of Aluminum-Based Metal Matrix Compos...A Review on the Progress and Challenges of Aluminum-Based Metal Matrix Compos...
A Review on the Progress and Challenges of Aluminum-Based Metal Matrix Compos...
 
Dynamic Urban Transit Optimization: A Graph Neural Network Approach for Real-...
Dynamic Urban Transit Optimization: A Graph Neural Network Approach for Real-...Dynamic Urban Transit Optimization: A Graph Neural Network Approach for Real-...
Dynamic Urban Transit Optimization: A Graph Neural Network Approach for Real-...
 
Structural Analysis and Design of Multi-Storey Symmetric and Asymmetric Shape...
Structural Analysis and Design of Multi-Storey Symmetric and Asymmetric Shape...Structural Analysis and Design of Multi-Storey Symmetric and Asymmetric Shape...
Structural Analysis and Design of Multi-Storey Symmetric and Asymmetric Shape...
 
A Review of “Seismic Response of RC Structures Having Plan and Vertical Irreg...
A Review of “Seismic Response of RC Structures Having Plan and Vertical Irreg...A Review of “Seismic Response of RC Structures Having Plan and Vertical Irreg...
A Review of “Seismic Response of RC Structures Having Plan and Vertical Irreg...
 
A REVIEW ON MACHINE LEARNING IN ADAS
A REVIEW ON MACHINE LEARNING IN ADASA REVIEW ON MACHINE LEARNING IN ADAS
A REVIEW ON MACHINE LEARNING IN ADAS
 
Long Term Trend Analysis of Precipitation and Temperature for Asosa district,...
Long Term Trend Analysis of Precipitation and Temperature for Asosa district,...Long Term Trend Analysis of Precipitation and Temperature for Asosa district,...
Long Term Trend Analysis of Precipitation and Temperature for Asosa district,...
 
P.E.B. Framed Structure Design and Analysis Using STAAD Pro
P.E.B. Framed Structure Design and Analysis Using STAAD ProP.E.B. Framed Structure Design and Analysis Using STAAD Pro
P.E.B. Framed Structure Design and Analysis Using STAAD Pro
 
A Review on Innovative Fiber Integration for Enhanced Reinforcement of Concre...
A Review on Innovative Fiber Integration for Enhanced Reinforcement of Concre...A Review on Innovative Fiber Integration for Enhanced Reinforcement of Concre...
A Review on Innovative Fiber Integration for Enhanced Reinforcement of Concre...
 
Survey Paper on Cloud-Based Secured Healthcare System
Survey Paper on Cloud-Based Secured Healthcare SystemSurvey Paper on Cloud-Based Secured Healthcare System
Survey Paper on Cloud-Based Secured Healthcare System
 
Review on studies and research on widening of existing concrete bridges
Review on studies and research on widening of existing concrete bridgesReview on studies and research on widening of existing concrete bridges
Review on studies and research on widening of existing concrete bridges
 
React based fullstack edtech web application
React based fullstack edtech web applicationReact based fullstack edtech web application
React based fullstack edtech web application
 
A Comprehensive Review of Integrating IoT and Blockchain Technologies in the ...
A Comprehensive Review of Integrating IoT and Blockchain Technologies in the ...A Comprehensive Review of Integrating IoT and Blockchain Technologies in the ...
A Comprehensive Review of Integrating IoT and Blockchain Technologies in the ...
 
A REVIEW ON THE PERFORMANCE OF COCONUT FIBRE REINFORCED CONCRETE.
A REVIEW ON THE PERFORMANCE OF COCONUT FIBRE REINFORCED CONCRETE.A REVIEW ON THE PERFORMANCE OF COCONUT FIBRE REINFORCED CONCRETE.
A REVIEW ON THE PERFORMANCE OF COCONUT FIBRE REINFORCED CONCRETE.
 
Optimizing Business Management Process Workflows: The Dynamic Influence of Mi...
Optimizing Business Management Process Workflows: The Dynamic Influence of Mi...Optimizing Business Management Process Workflows: The Dynamic Influence of Mi...
Optimizing Business Management Process Workflows: The Dynamic Influence of Mi...
 
Multistoried and Multi Bay Steel Building Frame by using Seismic Design
Multistoried and Multi Bay Steel Building Frame by using Seismic DesignMultistoried and Multi Bay Steel Building Frame by using Seismic Design
Multistoried and Multi Bay Steel Building Frame by using Seismic Design
 
Cost Optimization of Construction Using Plastic Waste as a Sustainable Constr...
Cost Optimization of Construction Using Plastic Waste as a Sustainable Constr...Cost Optimization of Construction Using Plastic Waste as a Sustainable Constr...
Cost Optimization of Construction Using Plastic Waste as a Sustainable Constr...
 

Recently uploaded

Why does (not) Kafka need fsync: Eliminating tail latency spikes caused by fsync
Why does (not) Kafka need fsync: Eliminating tail latency spikes caused by fsyncWhy does (not) Kafka need fsync: Eliminating tail latency spikes caused by fsync
Why does (not) Kafka need fsync: Eliminating tail latency spikes caused by fsyncssuser2ae721
 
Piping Basic stress analysis by engineering
Piping Basic stress analysis by engineeringPiping Basic stress analysis by engineering
Piping Basic stress analysis by engineeringJuanCarlosMorales19600
 
Concrete Mix Design - IS 10262-2019 - .pptx
Concrete Mix Design - IS 10262-2019 - .pptxConcrete Mix Design - IS 10262-2019 - .pptx
Concrete Mix Design - IS 10262-2019 - .pptxKartikeyaDwivedi3
 
welding defects observed during the welding
welding defects observed during the weldingwelding defects observed during the welding
welding defects observed during the weldingMuhammadUzairLiaqat
 
TechTAC® CFD Report Summary: A Comparison of Two Types of Tubing Anchor Catchers
TechTAC® CFD Report Summary: A Comparison of Two Types of Tubing Anchor CatchersTechTAC® CFD Report Summary: A Comparison of Two Types of Tubing Anchor Catchers
TechTAC® CFD Report Summary: A Comparison of Two Types of Tubing Anchor Catcherssdickerson1
 
Gurgaon ✡️9711147426✨Call In girls Gurgaon Sector 51 escort service
Gurgaon ✡️9711147426✨Call In girls Gurgaon Sector 51 escort serviceGurgaon ✡️9711147426✨Call In girls Gurgaon Sector 51 escort service
Gurgaon ✡️9711147426✨Call In girls Gurgaon Sector 51 escort servicejennyeacort
 
CCS355 Neural Network & Deep Learning UNIT III notes and Question bank .pdf
CCS355 Neural Network & Deep Learning UNIT III notes and Question bank .pdfCCS355 Neural Network & Deep Learning UNIT III notes and Question bank .pdf
CCS355 Neural Network & Deep Learning UNIT III notes and Question bank .pdfAsst.prof M.Gokilavani
 
Arduino_CSE ece ppt for working and principal of arduino.ppt
Arduino_CSE ece ppt for working and principal of arduino.pptArduino_CSE ece ppt for working and principal of arduino.ppt
Arduino_CSE ece ppt for working and principal of arduino.pptSAURABHKUMAR892774
 
Solving The Right Triangles PowerPoint 2.ppt
Solving The Right Triangles PowerPoint 2.pptSolving The Right Triangles PowerPoint 2.ppt
Solving The Right Triangles PowerPoint 2.pptJasonTagapanGulla
 
CCS355 Neural Networks & Deep Learning Unit 1 PDF notes with Question bank .pdf
CCS355 Neural Networks & Deep Learning Unit 1 PDF notes with Question bank .pdfCCS355 Neural Networks & Deep Learning Unit 1 PDF notes with Question bank .pdf
CCS355 Neural Networks & Deep Learning Unit 1 PDF notes with Question bank .pdfAsst.prof M.Gokilavani
 
Work Experience-Dalton Park.pptxfvvvvvvv
Work Experience-Dalton Park.pptxfvvvvvvvWork Experience-Dalton Park.pptxfvvvvvvv
Work Experience-Dalton Park.pptxfvvvvvvvLewisJB
 
8251 universal synchronous asynchronous receiver transmitter
8251 universal synchronous asynchronous receiver transmitter8251 universal synchronous asynchronous receiver transmitter
8251 universal synchronous asynchronous receiver transmitterShivangiSharma879191
 
Electronically Controlled suspensions system .pdf
Electronically Controlled suspensions system .pdfElectronically Controlled suspensions system .pdf
Electronically Controlled suspensions system .pdfme23b1001
 
computer application and construction management
computer application and construction managementcomputer application and construction management
computer application and construction managementMariconPadriquez1
 
UNIT III ANALOG ELECTRONICS (BASIC ELECTRONICS)
UNIT III ANALOG ELECTRONICS (BASIC ELECTRONICS)UNIT III ANALOG ELECTRONICS (BASIC ELECTRONICS)
UNIT III ANALOG ELECTRONICS (BASIC ELECTRONICS)Dr SOUNDIRARAJ N
 
Risk Assessment For Installation of Drainage Pipes.pdf
Risk Assessment For Installation of Drainage Pipes.pdfRisk Assessment For Installation of Drainage Pipes.pdf
Risk Assessment For Installation of Drainage Pipes.pdfROCENODodongVILLACER
 
Past, Present and Future of Generative AI
Past, Present and Future of Generative AIPast, Present and Future of Generative AI
Past, Present and Future of Generative AIabhishek36461
 

Recently uploaded (20)

Why does (not) Kafka need fsync: Eliminating tail latency spikes caused by fsync
Why does (not) Kafka need fsync: Eliminating tail latency spikes caused by fsyncWhy does (not) Kafka need fsync: Eliminating tail latency spikes caused by fsync
Why does (not) Kafka need fsync: Eliminating tail latency spikes caused by fsync
 
Exploring_Network_Security_with_JA3_by_Rakesh Seal.pptx
Exploring_Network_Security_with_JA3_by_Rakesh Seal.pptxExploring_Network_Security_with_JA3_by_Rakesh Seal.pptx
Exploring_Network_Security_with_JA3_by_Rakesh Seal.pptx
 
Piping Basic stress analysis by engineering
Piping Basic stress analysis by engineeringPiping Basic stress analysis by engineering
Piping Basic stress analysis by engineering
 
Concrete Mix Design - IS 10262-2019 - .pptx
Concrete Mix Design - IS 10262-2019 - .pptxConcrete Mix Design - IS 10262-2019 - .pptx
Concrete Mix Design - IS 10262-2019 - .pptx
 
welding defects observed during the welding
welding defects observed during the weldingwelding defects observed during the welding
welding defects observed during the welding
 
TechTAC® CFD Report Summary: A Comparison of Two Types of Tubing Anchor Catchers
TechTAC® CFD Report Summary: A Comparison of Two Types of Tubing Anchor CatchersTechTAC® CFD Report Summary: A Comparison of Two Types of Tubing Anchor Catchers
TechTAC® CFD Report Summary: A Comparison of Two Types of Tubing Anchor Catchers
 
Gurgaon ✡️9711147426✨Call In girls Gurgaon Sector 51 escort service
Gurgaon ✡️9711147426✨Call In girls Gurgaon Sector 51 escort serviceGurgaon ✡️9711147426✨Call In girls Gurgaon Sector 51 escort service
Gurgaon ✡️9711147426✨Call In girls Gurgaon Sector 51 escort service
 
CCS355 Neural Network & Deep Learning UNIT III notes and Question bank .pdf
CCS355 Neural Network & Deep Learning UNIT III notes and Question bank .pdfCCS355 Neural Network & Deep Learning UNIT III notes and Question bank .pdf
CCS355 Neural Network & Deep Learning UNIT III notes and Question bank .pdf
 
Arduino_CSE ece ppt for working and principal of arduino.ppt
Arduino_CSE ece ppt for working and principal of arduino.pptArduino_CSE ece ppt for working and principal of arduino.ppt
Arduino_CSE ece ppt for working and principal of arduino.ppt
 
Solving The Right Triangles PowerPoint 2.ppt
Solving The Right Triangles PowerPoint 2.pptSolving The Right Triangles PowerPoint 2.ppt
Solving The Right Triangles PowerPoint 2.ppt
 
CCS355 Neural Networks & Deep Learning Unit 1 PDF notes with Question bank .pdf
CCS355 Neural Networks & Deep Learning Unit 1 PDF notes with Question bank .pdfCCS355 Neural Networks & Deep Learning Unit 1 PDF notes with Question bank .pdf
CCS355 Neural Networks & Deep Learning Unit 1 PDF notes with Question bank .pdf
 
Work Experience-Dalton Park.pptxfvvvvvvv
Work Experience-Dalton Park.pptxfvvvvvvvWork Experience-Dalton Park.pptxfvvvvvvv
Work Experience-Dalton Park.pptxfvvvvvvv
 
8251 universal synchronous asynchronous receiver transmitter
8251 universal synchronous asynchronous receiver transmitter8251 universal synchronous asynchronous receiver transmitter
8251 universal synchronous asynchronous receiver transmitter
 
Electronically Controlled suspensions system .pdf
Electronically Controlled suspensions system .pdfElectronically Controlled suspensions system .pdf
Electronically Controlled suspensions system .pdf
 
computer application and construction management
computer application and construction managementcomputer application and construction management
computer application and construction management
 
UNIT III ANALOG ELECTRONICS (BASIC ELECTRONICS)
UNIT III ANALOG ELECTRONICS (BASIC ELECTRONICS)UNIT III ANALOG ELECTRONICS (BASIC ELECTRONICS)
UNIT III ANALOG ELECTRONICS (BASIC ELECTRONICS)
 
Design and analysis of solar grass cutter.pdf
Design and analysis of solar grass cutter.pdfDesign and analysis of solar grass cutter.pdf
Design and analysis of solar grass cutter.pdf
 
Risk Assessment For Installation of Drainage Pipes.pdf
Risk Assessment For Installation of Drainage Pipes.pdfRisk Assessment For Installation of Drainage Pipes.pdf
Risk Assessment For Installation of Drainage Pipes.pdf
 
young call girls in Rajiv Chowk🔝 9953056974 🔝 Delhi escort Service
young call girls in Rajiv Chowk🔝 9953056974 🔝 Delhi escort Serviceyoung call girls in Rajiv Chowk🔝 9953056974 🔝 Delhi escort Service
young call girls in Rajiv Chowk🔝 9953056974 🔝 Delhi escort Service
 
Past, Present and Future of Generative AI
Past, Present and Future of Generative AIPast, Present and Future of Generative AI
Past, Present and Future of Generative AI
 

IRJET- Natural Fiber Reinforced Composites: A Review

  • 1. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 06 Issue: 12 | Dec 2019 www.irjet.net p-ISSN: 2395-0072 © 2019, IRJET | Impact Factor value: 7.34 | ISO 9001:2008 Certified Journal | Page 262 Natural Fiber Reinforced Composites: A Review T Pavan Kumar1, A Chennakesava Reddy2, C Udaya Kiran3 1Research Scholar, Department of Mechanical Engineering, Jawaharlal Nehru Technological University, Hyderabad, India 2Professor, Department of Mechanical Engineering, Jawaharlal Nehru Technological University, Hyderabad, India 3Professor, Department of Mechanical Engineering, Bhasker Engineering College, Hyderabad, India. ---------------------------------------------------------------------***---------------------------------------------------------------------- Abstract - Over recent years, in the field of research, engineering and science, natural fibers with polymer composites are also useful as an alternative reinforcement for traditional composite. Not only are natural fibers strong and light, but they are also relatively cheap and have properties such as high specific strength, low weight, non-abrasive, environmentally friendly and biodegradable. Usually used natural fibers such as Jute, Sisal, Banana, Hemp, etc., polymer reinforcement of waste naturalfiber isasustainableoption for the environment. The materials of the polymer matrix together with the correct and suitable filler and better filler / matrix create a strong connection between traditional and modern methods or approaches. It allows the production of polymeric composites showing great potential applicationsin the construction, automotive, aerospace and packaging industries. Due to the larger surface area and greater aspect ratio, polymer composite displays significant applications in different fields with fascinating properties. Being environmentally friendly, polymer composite applications offer new technology and business opportunities for a number of industries, including aerospace, automotive, electronics, and biotechnology. Hybrid polymer composites in a reinforced polymer-based composite harness the synergy between natural fibers. It leadstogetherwiththegreenappeal to develop the estate. In addition to fiber-matrix interface bond strength, the mechanical properties of a natural fiber- reinforced polymer composite depend on parameters such as fiber density, fiber size, chemical treatment and orientation. The purpose of this review article is to clarify research and development in improving the mechanical properties of natural fiber reinforced polymer composites along with end applications. Key Words: Natural Fibre, Jute, Basalt, Kenaf, Matrix 1. INTRODUCTION A composite is a mixture of two materialsinwhichoneof the materials, called the reinforcement phase, is in the form of fibers, sheets, or particles and is installed in various materials called the Matrix phase. The substance that has been extracted from two or more different materials with mostly different physical and chemical properties leadingto individual components. The components will be individual. Composites are currently exploring application in products ranging from simple PC sheets and vehicleparts,suchasskis and bicycles, to elite athletic hardware. An interest in new, simple, fantastic production procedures has also been generated as composite material applications havegrownin scope. Current assembly methods include prepreg shaping, pultrusion, gum shaping, fiber winding, pressure trimming, and hand lay-up. Such methods refer to a wide range as far as price and value of products are concerned. ResinTransfer Molding (RTM) has demonstrated its ability to deliver great items at a moderately minimal effort as a guarantee. In decreased volatile outflows and geometric adaptability, it also has favorable circumstances. A comprehensive study has been done on natural fibres through the years. Roger. M, et.al. (1997), studied that Composite materials are used for building and construction of bridges, structuressuchasboat hulls, swimming pool panels, race car bodies, shower stalls, bathtubs, storage tanks, imitation granite, and cultured marble sinks and countertops [1]. Paul Wambua, et.al. (2003), The outline of this study states that the execution of regular fibre strengthened composites can be equivalent to that of the engineered fibre-based composites, yet with lower explicit weight and cost. The benefits of regular fibre composites are their ‘great dimensional security’ and ‘sturdiness’ against wood-based composites [2]. According to Hoi-yan Cheung et. al. (2009), the study wason different natural fibresandtheirdevelopmentinengineering components and domestic components. Properties like mechanical and thermal were also evaluated in depth. The discussion was about reinforcing animal fibre on plantfibre. The study concluded that it exhibits better thermal properties in comparison to onlypolymers[3].Jawaida et.al. (2011), This study examined the quality under tensile and flexural behavior of' tri-layer oil palm EFB/woven Jutefiber reinforced epoxy hybrid composites.' The tensile and flexural properties of hybrid composites were found to be higher than those of EFB composite, butlessthanwovenjute composite [4]. Bapi Sarker, et.al. (2011), The material used in this study was found to have low thickness,higher quality, and modulus than plastic, which is why it is a decent substitute for customary strands for greater partofthetime. Broadly utilized regular strands are cotton, jute, sisal, corn, coir, hemp, banana, pineapple, etc. These filaments are biodegradable and furthermore natural neighborly[5].KuH, et. al. (2011), Observations were made on the tensile properties of a material made of polymer composite strengthened by natural fiber [6]. Rafeeq et.al. (2013), the mechanical propertiesofthe epoxymatrixhavebeenstudied to create natural fibers such as stiffness, impact, flexural and thermal properties.Byholdingthefillerpercentageconstant,
  • 2. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 06 Issue: 12 | Dec 2019 www.irjet.net p-ISSN: 2395-0072 © 2019, IRJET | Impact Factor value: 7.34 | ISO 9001:2008 Certified Journal | Page 263 composite was manufactured by hand lay-up system. Concluded that it is possible to use composites in low-cost applications [7]. Saba N, et. al. (2014), the study was on hybrid composites and it was concluded that the properties of the material can be different and can be improved with different fiber lengths, orientation, fiber content and fiber arrangement. Hybrid materials do not exist in nature they are prepared by adding two or more than two materials these are unique materials. In this work the combination of polymer matrices and naturally available fibers were considered [8]. 1.1 A Study on Jute Fibre According to Mubarak A, et. al. (2004), the study has observed that from the few past decades, we have been worrying about the green condition, and in this way our real examinations have been centered around to make contamination free conditions. It is viewed that non- degradable materials are exclusively in charge of natural contamination[9].M.Z.AbedinAbdullah-Al-Kafi,et.al.(2006), Natural strands, according to the study, add to the simple degradation of the composites. These strandsalsohavealess ecological effect on their creation than glass filaments and polymers, as they require less vitality and produce less emanation [10]. S. Mukhopadhyay, et. al. (2015), this study makes some interesting observations referring that Natural fibres require only a low degree of industrialization for their processing, and in comparison with an equivalent weight of the most common synthetic reinforcing fibres, the energy required for their production is small and hence the cost of fabricating these composites is also relatively low. Another observation is that Jute fibres, as a natural reinforcing agent, are about seven times lighter than steel and high tensile strength values with a suitable low-cost [11]. Mubarak A. Khan, et.al. (2015), The study summarizes that Jute products are equallygoodwithdifferentstrandsinterms of use of vitality, emanation of ozone depleting material (GHG), eutrophication, and fermentation. One hectare of jute plants retain huge amounts of CO2 from the climate and during their 120-day life expectancy infuse nearly 11 tons of O2. In addition,decayedleavesandunderlyingfoundationsof jute plants enhance dirt maturity and decrease the cost of manure. The production of 1 Kg of jute shopping packs texture saves 80 MJ of vitality, as opposed to 1 Kg of poly hydroxyl alkanoid. Jute Hessian materialdevourslessvitality and radiates irrelevant measurements of 'GHG contrasting and thermoplastic polymers'[12]. Md SahadatHossain,et.al. (2017), This study observes that tightly integrating sensing, actuation, and computation into composites could enable a new generation of truly smart material systems that can change their appearance and shape autonomously. Applications for such materials include airfoils that change their aerodynamic profile, vehicles withcamouflageabilities, bridges that detect and repair damage, or robotic skins and prosthetics with a realistic sense of touch [13]. Sharfun N. Arju, et.al. (2015), Mubarak A. Khan, et.al. (2009), J.E. Riccieri, et.al. (1999), According to these studies, extraordinary non-degradable composite materials are directly and generally utilized rather than metals. Non- degradable materials are exposed to be supplanted by degradable ones soas to make contamination free condition. In this way, common fibre composites are picked up to make biodegradable materials [14, 15, 16].Jochen Gassan, et.al. (1999), MMushfequrRahman,et.al.(2012),SivaBhaskerRao Devireddy, et.al. (2016), An impressive observation made in this study was that, among all thenormalfilaments,jutegives off an impression of being a promising material, since it is moderately economicalandindustriallyaccessibleintropical nations [17,18,19]. Sharfun N. Arju, et.al. (2015), the summary of this study says that eventually in time, various non-degradable composite materials are generally utilized, rather than metals. Non-degradable materialsareexposedto be supplanted by degradable ones so as to make contamination free condition. Consequently, normal fibre composites are picked up to make biodegradable materials [20]. Km Idriss Ali, et.al. (1994), A K Mohanty, et.al. (2000), These studies report that the presentation of common fibre fortified composites can be similar to that of the manufactured fibre-based composites. However, with lower explicit weight and cost, the benefits of normal fibre composites are their ‘great dimensional security’ and ‘toughness’ against wood-based composites [21, 22, 23]. 1.2 A Study on Kenaf Fibre According to study made by Juliana .A, et. al. (2012), investigations were made on kenaf plant and its production in this study. It was concluded that kenaf maintains an average height of 4 to 6 mm stem diameter, and ranges from 25 to 35 mm within a period of 4-5 months [24]. Imtiaz Ali et. al. (2014), investigated on different factors of resin, to determine the physio-mechanical properties of medium density fibreboard (MDF) panels which were made from kenaf bast fibres. The other objective was to reduce the number of experimental runs using Taguchi method. The investigation concluded that ‘there is a significant effect on mechanical properties with respect to the changes in typeof resin and moisture content’. It was also observed that physio-mechanical propertiesaresuperior withMUFresinat 12% resin content and 12% mat moisture content. The complete study led to a suggestion that wood can be replaced by Kenaf fibres for MDF manufacturing 25]. H.O. Maurya et. al. (2015), in this study, the mechanical and thermal properties of Kenaf short fibres were determined after they were subjected to different temperatures and climatic conditions. The study concluded that ‘the mechanical and thermal propertiesofnatural fibres will change withrespecttoenvironmental conditions’;which is not same throughout the world [26]. N. Saba et. al. (2015), made observations on ‘kenaf reinforced polymer material’ for the past few years. It was mentioned in the study that since ‘kenaf reinforcement’ had superior mechanical
  • 3. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 06 Issue: 12 | Dec 2019 www.irjet.net p-ISSN: 2395-0072 © 2019, IRJET | Impact Factor value: 7.34 | ISO 9001:2008 Certified Journal | Page 264 properties, it can be used as material for building and construction. According to RajneeshVerma,et.al.(2018), the effects of fibre loading with different weight percentages on flexural and tensile properties were evaluated. The test samples, with and without alkali treatment, were taken. Further reinforcing behaviour of kenaf fibre was observed with Dynamic mechanical analysis [27].AlvidDevadas,et.al. (2018), the investigation of mechanical and tribological properties found that the strength of kenaf particles improved with the reinforcement of neat epoxy. Furthermore, there is an improvement in bending, overall load distribution and flexibility of the material. It was also concluded that Ws and friction coefficient improved significantly with thereinforcementof neat epoxy withkenaf particles. It was also seen that under different loading conditions, the optimal fibre particle loading condition is 15% [28]. 1.3 A Study on Basalt Fibre Fiore V, et.al. (2015), discussedabout basaltfiber production technology and contrasted with glass fiber production technology. It was concluded that basalt production process in comparison with glass fiber is non-hazardous and environmentally friendly. Moreover, basalt consumes less energy than glass fiber has been said [29]. In the study by V. Fiore, et. al. (2016), Compositesstrengthenedjuteand basalt were manufactured and accelerated aging of hygrothermal stress and UV radiation was done. Each specimen is tested for 14 days, 28 days, 56 days and 84 days. Mechanical tests were carried out in accordance with the ASTM standard, such as quasi-static flexural tests, charpy impact tests and dynamic mechanical tests. It was concluded that the hybrid composite has better impact, more flexural properties with superior resistance to aging than just jute [30]. In another study by Bulut M (2017), Observations were made on the influence on mechanical properties such as tensile, flexural and impact of graphene pellets with different weight percentages. It was concluded that the bonding strength of composite laminate was improved by 0.1% of graphene pellets. Also presented were furtherfailurecharacteristicsof the laminates prepared and tested [31]. 2. CONCLUSION Humanity has recently realized that, unless the ecosystem is preserved, it will itself be endangered by over-consumption of natural resources and a substantial reduction in the world's fresh air. The use of renewable resources such as plant-based and animal-based polymeric composites has become an important design criterion for the design and manufacture of components forall industrial products.In the last decade's work on natural materials (animal, vegetable) has increased rapidly with the growing interest over sustainable solutions in product design. In recent years, several studies have been carried out with the aim of obtaining polymer composites that are eco-friendly, biodegradable, low-cost lightweight natural fiber. Current research has been undertaken to explore the potential of natural fibers for various applications. The study focuses on reinforcing various chopped and continuous fibers, as well as on resins and filler materials affecting reinforcement and strength. And also on thermal properties, characteristics of materials. REFERENCES [1] Roger M. Rowell, Anand R. Sanadi, Daniel F. Caulfield, Rodney E. Jacobson, “Utilization of natural fibres in plastic composites: problems and opportunities,” Lignocellulosic Plast. Composite: Vol.13, pp. 23-51, 1997. [2] Paul Wambua, Ivens Jan, Ignaas Verpoest, “Naturalfibres: can they replace glass in fibre reinforced plastics,” Compos. Sci. Technol., 63 (9), pp. 1259-1264, 2003. [3] Hoi-yan Cheung, Mei-po Ho, Kin-tak Lau, Francisco Cardona, David Hui. “Natural fibre-reinforced composites for bioengineering and environmental engineering applications,” Composites: Part B, Vol.40, pp.655-663, 2009. [4] M.Jawaida, H.P.S.AbdulKhalila, A.AbuBakarb,“Materials science and engineering: A Review,” Vol 528, PP 5190- 5195, 2011. [5] Bapi Sarker, Kamol Dey, Ruhul A. Khan, “Effect of incorporation of polypropylene on the physico- mechanical andthermo-mechanical propertiesofgelatin fibre based linear low density polyethylene bio-foamed composite,” J. Thermoplast. Compos. Mater, 24 (5), pp. 679-694, 2011. [6] Ku H, Wang H, Pattarachaiyakoop N, Trade M, “A review on the tensile properties of natural fiber reinforced polymer composites,” Compos Part B Eng, Vol. 42, pp.856-73, 2011. [7] Rafeeq, S.N, Abdul Majeed I.M and Saeed A.R, (2013), “mechanical and thermal properties of Date palm fiber and coconut shell particulate filler reinforced Epoxy composite”, Indian Journal of Applied Research, 3(4), pp.89-92, 2013. [8] Saba N, Tahir P, Jawaid M, “A review on potentially of nano filler/ natural fiber filled polymer hybrid composites,” Polymers (Basel), Vol.6, pp.2247-73, 2014. [9] Mubarak A. Khan, S. Shehrzade, M. MasudulHassan, “Effect of alkali and ultraviolet (UV) radiation pretreatment on physical and mechanical properties of 1, 6-hexanediol diacrylate–grafted jute yarn by UV radiation,” J. Appl. Polym. Sci., 92 (1), pp. 18-24, 2004. [10] M. Z. Abedin Abdullah-Al-Kafi,M.D.H.Beg,K.L.Pickering, Mubarak A. Khan, “Study on the mechanical properties of jute/glass fibre-reinforced unsaturated polyester
  • 4. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 06 Issue: 12 | Dec 2019 www.irjet.net p-ISSN: 2395-0072 © 2019, IRJET | Impact Factor value: 7.34 | ISO 9001:2008 Certified Journal | Page 265 hybrid composites: effect of surface modification by ultraviolet radiation,” J. Reinf. Plast. Compos, 25 (6), pp. 575-588, 2006. [11] S. Mukhopadhyay, S. Khatana, “A review on the use of fibres in reinforced cementitious concrete,” J. Ind. Tex: 45 (2), pp. 239-264, 2015. [12] Mubarak A. Khan, Md SaifurRahaman, A. Al-Jubayer, J.M.M. Islam, “Modification of jute fibres by radiation- induced graft copolymerization and their applications,” V.K. Thakur (Ed.), Cellulose-Based Graft Copolymers: Structure and Chemistry, pp. 209-235, 2015. [13] Md Sahadat Hossain, AM Sarwaruddin Chowdhury, Ruhul A. Khan. “Effect of disaccharide, gamma radiation and temperature on the physico-mechanical properties of jute fabrics reinforced unsaturated polyester resin- based composite Radiat,” Eff. Defect Solid, 172 (5-6), pp. 517-530, 2017. [14] Sharfun N. Arju, A.M. Afsar, Mubarak A. Khan, Dipak K. Das. “Effects of jute fabric structuresontheperformance of jute-reinforced polypropylene composites,”J. Reinf. Plast. Compos, 34 (16), pp. 1306-1314, 2015. [15] Mubarak A. Khan, RuhulA. Khan, Haydaruzzaman, Abul Hossain, A.H. Khan. “Effect of gamma radiation on the physico-mechanical and electrical properties of jute fibre-reinforced polypropylene composites,”J. Reinf. Plast. Compos, 28 (13), pp. 1651-1660, 2009. [16] J.E. Riccieri, A. Vázquez, L. Hecker De Carvalho. “Interfacial properties and initial step of the water sorption in unidirectional unsaturated polyester/vegetable fibre composites,” Polym. Compos, 20 (1), pp. 29-37, 1999. [17] Jochen Gassan, Andrzej K. Bledzki. “Possibilities for improving the mechanical properties of jute/epoxy composites by alkali treatment of fibres,” Compos. Sci. Technol., 59 (9), pp. 1303-1309, 1999. [18] M. Mushfequr Rahman, Nusrat Sharmin, RuhulA. Khan, Kamol Dey, M.E. Haque. “Studies on the mechanical and degradation properties of jute fabric-reinforced natural rubber composite: effect of gamma radiation,” J. Thermoplast. Compos. Mater, 25 (2), pp. 249-264, 2012. [19] Siva Bhaskara Rao Devireddy, Sandhyarani Biswas. “Physical and thermal properties of unidirectional banana–jute hybrid fibre-reinforcedepoxycomposites,” J. Reinf. Plast. Compos, 35 (15), pp. 1157-1172, 2016. [20] Sharfun N. Arju, A.M. Afsar, Mubarak A. Khan, Dipak K. Das, “Effects of jute fabric structuresontheperformance of jute-reinforced polypropylene composites,” J. Reinf. Plast. Compos, 34 (16), pp. 1306-1314, 2015. [21] KM Idriss Ali, Mubarak A. Khan, M.M. Husain, “Study of wood plastic composite in the presence of nitrogen containing additives,” Radiat. Phys. Chem., 44 (4), pp. 427-429, 1994. [22] A.K. Mohanty, M.A. Khan, G. Hinrichsen, “Influence of chemical surface modification on the properties of biodegradable jute fabrics—polyester amide composites,” Compos. Appl. Sci. Manuf., 31 (2), pp. 143- 150, 2000. [23] A.K. Mohanty, Mubarak A. Khan, G. Hinrichsen, “Surface modification of jute and its influence on performance of biodegradable jute-fabric/Biopolcomposites,” Compos. Sci. Technol., 60 (7), pp. 1115-1124, 2000. [24] Juliana. A, Paridah, M, Rahim.S, Nor Azowa. I, Anwar. U, “properties of particleboard made from Kenaf(Hibiscus cannabinus L) as function of particle geometry,” Materials and Design: Vol. 34, pp. 406-411, 2012. [25] Imtiaz, Krishnan Jayaraman, Debes Bhattacharyya. “Effects of resin and moisture content on the properties of medium density fibreboards made from Kenaf bast fibres,” Industrial Crops and Products, Vol. 52, pp. 191- 198, 2014. [26] H.O. Maurya, M.K. Gupta, H. Singh. “Study on mechanical properties of HDPE composite using short Kenaf fibre,” Materials Today: Proceedings 2, pp. 1347-1355, 2015. [27] N. Saba, M.T.Paridan, M.Jawaid, “Mechanical properties of Kenaf fibre reinforced polymer composite: A review,” Construction and Building Materials, Vol. 76, pp. 87-96, 2015. [28] Alvid Devadas, Umar Nirmal, J. Hossen, “Investigation into mechanical & tribological performance of Kenaf fibre particle reinforced composite,”CogentEngineering 5: 1479210, 2018. [29] Fiore V, Scalici T, Di Bella G, Valenza A. “A review on basalt fibre and its composites”, Compos Part B Eng, Vol.74, pp.74–94, 2015. [30] V. Fiore, T. Scalici, D. Badagliacco, D. Enea, G. Alaimo, A. Valenza, “Aging resistance of bio-epoxy jute-basalt hybrid composites as novel multilayer structures for cladding”, Composite Structures, 2016. [31] Bulut M, “Mechanical properties of Basalt/Epoxy composite laminatescontaininggraphemenanopellets,” Composite Part B, 2017.
  • 5. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 06 Issue: 12 | Dec 2019 www.irjet.net p-ISSN: 2395-0072 © 2019, IRJET | Impact Factor value: 7.34 | ISO 9001:2008 Certified Journal | Page 266 BIOGRAPHIES “Pavan Kumar T is a research scholar, who has also registered 2 patents in Government of India. His area of expertise lies in CAD CAM, Machine Drawing and Engineering Drawing. He is proficient in modeling software like CREO and Solidworks, with an extensive knowledge in analysis softwares like ANSYS (Structural).” “Chenna Kesava Reddy has completed several R& D and Consultancy proje cts sponsored by AICTE, UGC, DRDO and State Government worth 300 Lakhs. He has guided 40 M.Tech projects successfully and guided 18 research scholars for their Ph.D. “ “Udaya Kiran C hasbeenactingas a Reviewer for various journals like Journal of Reinforced Plastics and Composites, Journal of Thermal Engineering, Journal of Chemical Engineering and Materials Science. “